Meuleman Theodorus J, Cowton Vanessa M, Patel Arvind H, Liskamp Rob M J
School of Chemistry, University of Glasgow, Joseph Black Building, University Avenue, Glasgow G12 8QQ, UK.
Enzytag, Daelderweg, 9 6361 HK Nuth, The Netherlands.
Viruses. 2021 Feb 20;13(2):326. doi: 10.3390/v13020326.
Hepatitis C virus remains a global threat, despite the availability of highly effective direct-acting antiviral (DAA) drugs. With thousands of new infections annually, the need for a prophylactic vaccine is evident. However, traditional vaccine design has been unable to provide effective vaccines so far. Therefore, alternative strategies need to be investigated. In this work, a chemistry-based approach is explored towards fully synthetic peptide-based vaccines using epitope mimicry, by focusing on highly effective and conserved amino acid sequences in HCV, which, upon antibody binding, inhibit its bio-activity. Continuous and discontinuous epitope mimics were both chemically synthesized based on the HCV-E2 glycoprotein while using designed fully synthetic cyclic peptides. These cyclic epitope mimics were assembled on an orthogonally protected scaffold. The scaffolded epitope mimics have been assessed in immunization experiments to investigate the elicitation of anti-HCV-E2 glycoprotein antibodies. The neutralizing potential of the elicited antibodies was investigated, representing a first step in employing chemically synthesized epitope mimics as a novel strategy towards vaccine design.
尽管已有高效的直接作用抗病毒(DAA)药物,但丙型肝炎病毒仍然是一个全球威胁。每年有数千例新感染病例,预防性疫苗的需求显而易见。然而,传统的疫苗设计迄今为止未能提供有效的疫苗。因此,需要研究替代策略。在这项工作中,通过聚焦丙型肝炎病毒中高效且保守的氨基酸序列,利用表位模拟,探索了一种基于化学方法的全合成肽基疫苗,这些序列在抗体结合后会抑制其生物活性。基于丙型肝炎病毒E2糖蛋白,同时使用设计的全合成环肽,化学合成了连续和不连续的表位模拟物。这些环表位模拟物组装在一个正交保护的支架上。在免疫实验中评估了支架化表位模拟物,以研究抗丙型肝炎病毒E2糖蛋白抗体的诱导情况。研究了诱导抗体的中和潜力,这是将化学合成表位模拟物用作疫苗设计新策略的第一步。